Required information Consider the circuit given below. Vino R₁ R₂ m 12 m 4₁ R3 - Vout Determine the magnitude and phase of the transfer function at w = 0, 2.600 × 103 rad/s, and as w→ ∞ for the case where circuit values are R₁ = 2 kQ, R₂ = 2 kQ, R3 = 20 kQ2, L₁= 2 H, and L2 = 2 H. (Report your answer so that all angles are in the range of 0 degrees to positive 180 degrees.) The magnitude and phase of the transfer function at w = 0 rad/s is The magnitude and phase of the transfer function at w = 2.600 × 10³ rad/s is decimal places.) The magnitude and phase of the transfer function when w→∞ is 。 °. (Round the final answers to three

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Required information
Consider the circuit given below.
Vino
R₁
Imm
R₂
12
m
L₁
R3
Vout
Determine the magnitude and phase of the transfer function at w = 0, 2.600 × 10³ rad/s, and as w→ ∞ for the case where circuit
values are R₁ = 2 kQ, R₂ = 2 kQ₂ R3 = 20 kQ, L₁ = 2 H, and L2 = 2 H. (Report your answer so that all angles are in the range of 0
degrees to positive 180 degrees.)
The magnitude and phase of the transfer function at w = 0 rad/s is
The magnitude and phase of the transfer function at w = 2.600 x 103 rad/s is
decimal places.)
The magnitude and phase of the transfer function when w→ ∞ is
2
°. (Round the final answers to three
Transcribed Image Text:Required information Consider the circuit given below. Vino R₁ Imm R₂ 12 m L₁ R3 Vout Determine the magnitude and phase of the transfer function at w = 0, 2.600 × 10³ rad/s, and as w→ ∞ for the case where circuit values are R₁ = 2 kQ, R₂ = 2 kQ₂ R3 = 20 kQ, L₁ = 2 H, and L2 = 2 H. (Report your answer so that all angles are in the range of 0 degrees to positive 180 degrees.) The magnitude and phase of the transfer function at w = 0 rad/s is The magnitude and phase of the transfer function at w = 2.600 x 103 rad/s is decimal places.) The magnitude and phase of the transfer function when w→ ∞ is 2 °. (Round the final answers to three
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